Department of Polymer Science and Engineering, Inha University, Incheon 402-751, Korea.
ACS Appl Mater Interfaces. 2012 Apr;4(4):2267-72. doi: 10.1021/am300267f. Epub 2012 Apr 11.
Novel polarizable graphene oxide (GO) particles with oxidized groups on their edge and basal planes were prepared by a modified Hummers method, and their electro-responsive electrorheological (ER) characteristics when dispersed in silicone oil were examined with and without an electric field applied. The fibrillation phenomenon of this GO-based electro-responsive fluid was also observed via an optical microscope under an applied electric field. Both flow curves and dielectric spectra of the ER fluid were measured using a rotational rheometer and a LCR meter, respectively. Its viscoelastic properties of both storage and loss moduli were also examined using a vertical oscillation rheometer equipped with a high voltage generator, finding that the GO-based smart ER system behaves as a viscoelastic material under an applied electric field.
通过改进的 Hummers 法制备了具有氧化基团的新型各向异性氧化石墨烯(GO)颗粒,研究了它们在硅油中的电响应电流变(ER)特性,以及在施加和不施加电场时的情况。通过在施加电场下的光学显微镜观察到基于 GO 的电响应流体的纤化现象。使用旋转流变仪和 LCR 仪表分别测量了 ER 流体的流动曲线和介电谱。使用配备高压发生器的垂直振荡流变仪还测试了其存储和损耗模量的粘弹性特性,发现基于 GO 的智能 ER 系统在施加电场下表现为粘弹性材料。